The <i>Medicago truncatula</i> lncRNA <i>ENOD40</i> is a mediator of <i>microRNA169</i> -controlled <i>NF-YA</i> activity in nodule initiation

T Tristan Wijsman (Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University) N Nadia A. Mohd-Radzman (Sainsbury Laboratory, Department of Plant Sciences, University of Cambridge) J Jieyu Liu (Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University) G Giles E. D. Oldroyd (Sainsbury Laboratory, Department of Plant Sciences, University of Cambridge) W Wouter Kohlen (Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University) O Olga Kulikova (Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University) R Renze Heidstra (Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University) B Ben Scheres (Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University) H Henk J. Franssen (Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University)

Abstract

The hallmark of the legume lncRNA EARLY NODULIN40 ( ENOD40 ), involved in rhizobium-induced nodulation, is the presence of a highly conserved stretch of 24 nucleotides, designated box2, preceded by a small open-reading-frame (sORF) coding for a peptide of 12 to 13 amino acids. Although there is a well-established link between ENOD40 and nodulation, it is not fully clear by which mechanism ENOD40 functions in this process. Here, we show that a region harboring box2 can complement nodule formation in an ENOD40 knock-out mutant ( enod40-1-2/1 ). The sequence of box2 bears the characteristics of a miR169 target mimic. We show that the artificial target mimic MIM169defg can indeed complement the reduced capability of nodule formation in enod40-1-2/1 , and that box2 exhibits target mimic activity in a transient luciferase assay. In addition, the introduction of a miR169 -resistant form of MtNF-YA1 also elevates the capacity to form nodules in enod40-1-2/1. We conclude that ENOD40 effectuates nodule initiation by posttranscriptional upregulation of the miR169 target NF-YA1 , which encodes an essential transcription factor in this step of the nodulation process.

Article Details

Volume / Issue Vol. 122, Issue 34
Published August 26, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (9)

T

Tristan Wijsman

Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University

N

Nadia A. Mohd-Radzman

Sainsbury Laboratory, Department of Plant Sciences, University of Cambridge

J

Jieyu Liu

Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University

G

Giles E. D. Oldroyd

Sainsbury Laboratory, Department of Plant Sciences, University of Cambridge

W

Wouter Kohlen

Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University

O

Olga Kulikova

Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University

R

Renze Heidstra

Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University

B

Ben Scheres

Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University

H

Henk J. Franssen

Department of Plant Sciences, Cluster of Plant Development Biology, Wageningen University